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中纬度荒漠区河西走廊沙丘地貌的演化特征及其环境指示 被引量:11
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作者 朱秉启 《地理学报》 EI CSSCI CSCD 北大核心 2021年第11期2710-2729,共20页
北半球中纬度地区的沙丘地貌变化和粉尘活动历史是探索全球环境变化与景观响应问题的良好档案。本文从风沙地貌学、粒度沉积学、地球化学和气候学等方面综合分析了中纬度典型荒漠区河西走廊的典型沙丘动态变化、物质来源、粉尘活动历史... 北半球中纬度地区的沙丘地貌变化和粉尘活动历史是探索全球环境变化与景观响应问题的良好档案。本文从风沙地貌学、粒度沉积学、地球化学和气候学等方面综合分析了中纬度典型荒漠区河西走廊的典型沙丘动态变化、物质来源、粉尘活动历史及其影响因素等。结果表明,20世纪60年代以来研究区典型新月形沙丘和新月形沙丘链等发生了较大的移动或摆动,平均移动速度介于0.8~6.2 m/a之间。沙丘的动态变化主要受年降水量、年平均风速和年大风日数的影响,表明气候是沙丘地貌变化的首要影响因素。沙丘沙(三段式)与戈壁沉积物的两段式粒度曲线模式明显不同,揭示了后者在沉积学上的"不成熟性"而前者经历了高效的风成分异作用且非局地起源。古地理、沉积学和地球化学综合证据揭示沙丘沙的母源物质主要是冲洪积物和古河流沉积物等,包括南北山麓剥蚀带的碎屑沉积等。地表细颗粒物质的比例、表层盐结皮的覆盖率和可蚀性砂质物质含量等指标指示了西部戈壁区不是中东部风尘的主要来源区。沙丘移动方向与区域性主导风向在空间分布上具有相似性,表明河西走廊东、西部间之间在沙丘地貌动态演化上的差异应受控于区域尺度的环流风系,即受控于动力机制而不是物质来源上的差异。区域气候的暖湿化是对全球增温和亚洲夏季风增强的同步响应,也是研究区沙尘暴减少的主要原因,同期河西走廊潜在的逆沙漠化过程亦受控于气候变化;但绿洲区沙漠化过程还是起因于人类活动影响的地下水波动。 展开更多
关键词 沙丘地貌 戈壁 粒度沉积学 地球化学 全球变暖 沙漠化 中纬度荒漠
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The global response of temperature to high-latitude vegetation greening in a two-dimensional energy balance model
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作者 BI Lu HE Yongli +3 位作者 HUANG Jianping LI Yaokun GUAN Xiaodan LIU Xiaoyue 《Atmospheric and Oceanic Science Letters》 CSCD 2020年第1期80-87,共8页
The relationship between vegetation greening and climate change remains unclear due to its complexity, especially in drylands. Against the background of global warming, arid and semi-arid areas, including mid-latitude... The relationship between vegetation greening and climate change remains unclear due to its complexity, especially in drylands. Against the background of global warming, arid and semi-arid areas, including mid-latitude deserts, are most sensitive to climate change. In recent decades, the mechanisms underlying the relationship between vegetation greening and climate change have been widely discussed in the literature. However, the influence of vegetation greening in high latitudes on regional climate has not been fully studied. In this paper, a two-dimensional energy balance model was used to study the influence of greening in high latitudes on mid-latitude deserts. The authors found that when greening occurs in high latitudes, the mid-latitude desert recedes at the south boundary, while the polar ice belt and low-latitude vegetation belt both expand. Simultaneously, greening in high latitudes can induce a negative temperature anomaly in northern latitudes and a positive temperature anomaly in southern latitudes. The mid-latitude desert expands at its north and south boundaries until the CO2 concentration reaches 600 ppm(saturated state). The greening in high latitudes could result in a lower global-mean temperature in the ‘saturated’ state, due to the stronger cooling in high latitudes. 展开更多
关键词 High-latitude greening two-dimensional energy balance model mid-latitude desert remote effect global warming
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